A.V. Menschikov, B.S. Mazurok, B.S. Dolgovesov, R.V. Fursenko, and S.S. Minaev (Russia)
Simulation, flame front, flamelet, and particle system.
This paper proposed a numerical algorithm for flame front evolution within frame of “flamelet” model. This algorithm assumes the representation of the continuous medium by set of discrete particles. The formulation of mathematical model as well as investigations of the influence of the particles density on the burning velocity and other characteristics of the flame front is discussed. The burning velocity dependency on the particle density was obtained. An example of flame evolution in prescribed complex swirl flow calculated by developed algorithm is presented.
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